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Updated: Mar 1, 2026

Author Spotlight: Optimizing Scorpion Venom Extraction for Antivenom Production
Published on: October 6, 2023
Immunogenicity of two representative American consensus scorpion neurotoxins from the genera Tityus and Centruroides
Samuel Cardoso-Arenas1, Miguel Angel Mejia-Sanchez1, Ricardo Miranda-Blancas1
1Departamento de Medicina Molecular y Bioprocesos, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Cuernavaca, Morelos, México.
Abstract:
Two consensus scorpion toxins derived from venoms of the genera Centruroides (NATx, North America), and Tityus (SATx, South America) were rationally designed and recombinantly expressed in Escherichia coli Origami. Both recombinant proteins were produced as inclusion bodies and subsequently purified and refolded in vitro to obtain biologically active isoforms. The expression yields were approximately 1 mg/L for rNATx and 0.5 mg/L for rSATx. Structural characterization by circular dichroism spectroscopy revealed that rNATx and rSATx exhibited folding patterns typical of scorpion β-toxins. The purified recombinant toxins were used as immunogens to raise polyclonal antibodies in New Zealand rabbits. The resulting antisera were evaluated for their capacity to neutralize isolated toxins and whole scorpion venoms. rNATx elicited a stronger immune response and showed superior immunogenicity compared to rSATx. Notably, 1-1.5 mg of anti-rNATx antibodies were sufficient to neutralize up to 3LD50 of venoms from the most medically relevant Centruroides species in México. On the other hand, approximately 20 mg of anti-rSATx antibodies were required to neutralize only 2LD50 of Tityus venoms. Additionally, T-cell subsets quantified by flow cytometry showed that rNATx is more immunogenic and probably confers improved antivenom efficacy, highlighting its potential application in the development of broad-spectrum antivenoms against scorpion envenomation.
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